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◇ arXiv2026-09-07· hep-th

Logarithmic correction to the entropy of near-extremal higher-curvature black holes

Pablo Bueno, Pablo A. Cano, Robie A. Hennigar, Javier Moreno, Ángel J. Murcia, Guido van der Velde

原始摘要(英文原文)· Original abstract
The spherically symmetric sector of broad classes of $D$-dimensional gravitational theories can be effectively described by general two-dimensional Horndeski theories. Exploiting this correspondence, we study the low-temperature dynamics of near-extremal black hole solutions of the parent theories by deriving a universal near-horizon effective description in terms of Jackiw--Teitelboim (JT) gravity. We explicitly show that the logarithmic quantum correction to the entropy, $S_{\rm JT}=\frac{3}{2}\log \left(T/T_{\rm breakdown} \right)$, previously derived for near-extremal black holes in Einstein gravity coupled to matter from the one-loop exact JT partition function, is universal across all models admitting an effective two-dimensional Horndeski description. We determine the general form of the scale at which this correction becomes dominant, $T_{\rm breakdown}$, in terms of the data of the $D$-dimensional theories. We illustrate our general results with charged black holes in Lovelock gravities and regular black holes in Quasitopological gravities.
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Logarithmic correction to the entropy of near-extremal higher-curvature black holes — 科研速览 Science Skim